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| Product Name | High-flow-rate Metal Asymmetric Mixing Chip for the Preparation of Nanoparticles |
| Catalog Number | MC-SPC-051 |
| Physical Specs | 69*87*14 mm |
| Description | Asymmetric mixing structure chips are advanced micro-mixing devices based on fluid dynamics that enable two-phase fluids to mix via laminar or turbulent contact within micron-scale channels. Their core feature lies in the asymmetric design of the channel cross-section, flow-splitting angle, or obstacle arrangement. They are commonly used for the synthesis of various lipid nanoparticles (such as liposomes, LNPs, and polymeric nanoparticles). |
| Applications | Lipid nanoparticles, liposomes; cosmetic application development; polymer nanoparticles; formulation development and scale-up for the above applications |
| Features | Pilot-scale flow rate testing can be conducted using small-scale equipment. Chips of the same structure and size can be directly applied to pilot-scale production. This meets the needs of all stages from laboratory research to industrial production; the asymmetric design improves mixing efficiency, enabling the synthesis of high-flow-rate liposome nanoparticles (LNPs) and liposomes, as well as the efficient encapsulation of samples; the materials used are of superior quality. Corrosion-resistant, high-pressure-resistant, high-temperature-resistant, high thermal conductivity, wear-resistant, and cleanable. Supports replacement of backplates and different structures to accommodate a wider range of formulation syntheses. Some unique formulations require special structures for effective encapsulation. The adaptability of multiple structures increases options, thereby facilitating the development of proprietary formulations. |
| Material | 316L stainless steel (or custom Hastelloy) |
| Temperature Resistance | 0-80°C |
| Connect | Luer |
| Flow Rate | 40-160 mL/min |
| Width | Minimum width: 0.3 mm/0.4 mm/0.5 mm (channel) |